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Magnetic logic functionalities and scalability of thermally assisted MRAMs

机译:热辅助MRAM的磁逻辑功能和可伸缩性

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On paper, MRAMs combine non volatility, high speed, moderate power consumption, infinite endurance and radiation hardness, all at low cost and easy to embed. Since its inception in the late 90's, however, and despite numerous promising announcements from laboratories, large corporations and start-ups, MRAM has failed to live to its expectations. Large volume applications are still to be seen, with only Toggle switching-based standalone products currently available, at 180nm technology node. The recent advent of spin transfer torque, however, has shed a new light on MRAM with the promises of much improved performances and greater scalability to very advanced technology node. As a consequence, MRAM is now viewed again as a credible replacement to existing technologies for applications where the combination of non-volatility, speed, low power and endurance is key.
机译:在纸面上,MRAM具有非易失性,高速度,中等功耗,无限的耐用性和辐射硬度等优点,而且价格低廉且易于嵌入。然而,自90年代末成立以来,尽管实验室,大型公司和初创企业发表了许多有希望的声明,但MRAM未能实现其期望。大规模应用仍有待观察,目前只有基于Toggle开关的独立产品可用于180nm技术节点。但是,自旋传递扭矩的最新出现为MRAM带来了新的亮点,并有望大大提高性能,并扩展到非常先进的技术节点。因此,对于非易失性,速度,低功耗和耐用性至关重要的应用,MRAM现在再次被视为现有技术的可靠替代品。

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